Intelligent lifting platform for physical distribution
A lifting platform and lifting platform technology, applied in the direction of lifting frame, lifting device, etc., can solve the problems of being unable to handle a large number of items and stacking of high-level items, unable to fully consider the load capacity of the device, and the instability of the lifting device. Large, strong mechanism rigidity, the effect of preventing excessive drop
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Embodiment 1
[0034] The driving wheel 4 is a pulley, the transmission mechanism 5 is a conveyor belt, the position sensor 11 is a photoelectric sensor, the first driving device and the second driving device are a motor 6, the motor 6 is connected to the reducer 8 through a coupling 7, and the reducer 8 is connected to the active Axis 9 is connected.
[0035] Such as Figure 1~3 As shown, a logistics intelligent lifting platform includes a lifting unit, a transmission unit and a control unit. The lifting unit includes a lifting platform 1, a lifting frame 2 and two sets of guide rails 3. The guide rails 3 are vertically fixed on the lifting frame 2. The lifting platform 1 and The guide rail 3 is slidingly connected, and the sliding method can reduce the friction force generated during the lifting process of the lifting platform 1, which is more labor-saving than the existing lifting device directly lifting the lifting platform 1 along the lifting frame 2; the transmission unit includes two ...
Embodiment 2
[0038] The structure of embodiment 2 is roughly the same as that of embodiment 1, the difference is: as Figure 4 As shown, on the basis of Embodiment 1, the first drive device and the second drive device are respectively connected with fault detection circuits that control and protect the drive devices.
[0039] When the first driving device and the second driving device are overloaded, the fault detection circuit feeds back the fault signal to the controller through the feedback line. When the controller fails, the controller also feeds back the fault signal to the fault detection circuit through the feedback line, and the fault detection The circuit cuts off the working power of the first driving device and the second driving device according to the fault signal, and the first driving device and the second driving device stop working.
Embodiment 3
[0041] The structure of embodiment 3 is roughly the same as that of embodiment 2, the difference is: as Figure 6 As shown, on the basis of Embodiment 2, an obstacle detector is provided under the elevator platform 1, and the obstacle detector is electrically connected to the signal conditioner. Four rubber pads are arranged on the four corners below the elevator platform 1, and the obstacle detector The detector can prevent the lifting platform 1 from colliding with the ground when it descends, and the rubber pad can buffer the impulse force brought by the lifting platform 1 during its descent.
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